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Inhibition of PCSK9 potentiates immune checkpoint therapy for cancer
Xinjian Liu1,2, Xuhui Bao1, Mengjie Hu1
1Department of Dermatology, Duke University Medical Center, Durham, NC, USA.
Abstract:
Despite its success in achieving the long-term survival of 10-30% of treated individuals, immune therapy is still ineffective for most patients with cancer1,2. Many efforts are therefore underway to identify new approaches that enhance such immune 'checkpoint' therapy3-5 (so called because its aim is to block proteins that inhibit checkpoint signalling pathways in T cells, thereby freeing those immune cells to target cancer cells). Here we show that inhibiting PCSK9-a key protein in the regulation of cholesterol metabolism6-8-can boost the response of tumours to immune checkpoint therapy, through a mechanism that is independent of PCSK9's cholesterol-regulating functions. Deleting the PCSK9 gene in mouse cancer cells substantially attenuates or prevents their growth in mice in a manner that depends on cytotoxic T cells. It also enhances the efficacy of immune therapy that is targeted at the checkpoint protein PD1. Furthermore, clinically approved PCSK9-neutralizing antibodies synergize with anti-PD1 therapy in suppressing tumour growth in mouse models of cancer. Inhibiting PCSK9-either through genetic deletion or using PCSK9 antibodies-increases the expression of major histocompatibility protein class I (MHC I) proteins on the tumour cell surface, promoting robust intratumoral infiltration of cytotoxic T cells. Mechanistically, we find that PCSK9 can disrupt the recycling of MHC I to the cell surface by associating with it physically and promoting its relocation and degradation in the lysosome. Together, these results suggest that inhibiting PCSK9 is a promising way to enhance immune checkpoint therapy for cancer.
Insights
Inhibiting proprotein convertase subtilisin/kexin type 9 (PCSK9) enhances cancer immune checkpoint therapy by increasing MHC I expression on tumor cells, boosting T cell response. This approach shows promise for improving patient outcomes.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Immune checkpoint therapy improves cancer survival for a subset of patients but is ineffective for many.
- New strategies are needed to enhance the efficacy of immune checkpoint inhibitors.
- Proprotein convertase subtilisin/kexin type 9 (PCSK9) is a key regulator of cholesterol metabolism.
Purpose of the Study:
- To investigate whether inhibiting PCSK9 can enhance the response to cancer immune checkpoint therapy.
- To elucidate the mechanism by which PCSK9 inhibition affects anti-tumor immunity.
Main Methods:
- Genetic deletion of the PCSK9 gene in mouse cancer cells.
- Administration of PCSK9-neutralizing antibodies in combination with anti-PD1 therapy in mouse cancer models.
- Assessment of tumor growth, T cell responses, and major histocompatibility protein class I (MHC I) expression.
Main Results:
- PCSK9 gene deletion attenuated tumor growth in a T cell-dependent manner and enhanced anti-PD1 therapy efficacy.
- Clinically approved PCSK9 antibodies synergized with anti-PD1 therapy to suppress tumor growth.
- PCSK9 inhibition increased MHC I surface expression on tumor cells, promoting cytotoxic T cell infiltration.
Conclusions:
- PCSK9 inhibition enhances anti-tumor immunity through a mechanism independent of its cholesterol-regulating functions.
- PCSK9 physically interacts with MHC I, promoting its lysosomal degradation and reducing cell surface expression.
- Inhibiting PCSK9 represents a promising strategy to improve the effectiveness of immune checkpoint therapy for cancer.
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